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在高粒子数密度下对湍流中四路耦合粒子进行高效的基于点的模拟。

Efficient point-based simulation of four-way coupled particles in turbulence at high number density.

作者信息

de Wit Xander M, Kunnen Rudie P J, Clercx Herman J H, Toschi Federico

机构信息

Fluids and Flows group and J.M. Burgers Center for Fluid Mechanics, Department of Applied Physics and Science Education, <a href="https://ror.org/02c2kyt77">Eindhoven University of Technology</a>, 5600 MB Eindhoven, Netherlands.

CNR-<a href="https://ror.org/00ygy3d85">IAC</a>, I-00185 Rome, Italy.

出版信息

Phys Rev E. 2024 Jul;110(1-2):015301. doi: 10.1103/PhysRevE.110.015301.

DOI:10.1103/PhysRevE.110.015301
PMID:39160910
Abstract

In many natural and industrial applications, turbulent flows encompass some form of dispersed particles. Although this type of multiphase turbulent flow is omnipresent, its numerical modeling has proven to be a remarkably challenging problem. Models that fully resolve the particle phase are computationally very expensive, strongly limiting the number of particles that can be considered in practice. This warrants the need for efficient reduced order modeling of the complex system of particles in turbulence that can handle high number densities of particles. Here we present an efficient method for point-based simulation of particles in turbulence that are four-way coupled. In contrast with traditional one-way coupled simulations, where only the effect of the fluid phase on the particle phase is modeled, this method additionally captures the back-reaction of the particle phase on the fluid phase, as well as the interactions between particles themselves. We focus on the most challenging case of very light particles or bubbles, which show strong clustering in the high-vorticity regions of the fluid. This strong clustering poses numerical difficulties which are systematically treated in our work. Our method is valid in the limit of small particles with respect to the Kolmogorov scales of the flow and is able to handle very large number densities of particles. This methods paves the way for comprehensive studies of the collective effect of small particles in fluid turbulence for a multitude of applications.

摘要

在许多自然和工业应用中,湍流包含某种形式的离散颗粒。尽管这种多相湍流无处不在,但其数值模拟已被证明是一个极具挑战性的问题。完全解析颗粒相的模型计算成本非常高,极大地限制了实际中可考虑的颗粒数量。这就需要对湍流中复杂的颗粒系统进行高效的降阶建模,以处理高数量密度的颗粒。在此,我们提出一种用于湍流中颗粒的基于点的四向耦合模拟的高效方法。与传统的单向耦合模拟不同,传统单向耦合模拟仅对流体相对颗粒相的影响进行建模,而该方法还能捕捉颗粒相对流体相的反向作用以及颗粒之间的相互作用。我们关注非常轻的颗粒或气泡这种最具挑战性的情况,它们在流体的高涡度区域表现出强烈的聚集。这种强烈的聚集带来了数值上的困难,我们的工作对其进行了系统处理。我们的方法在相对于流动的柯尔莫哥洛夫尺度而言颗粒较小的极限情况下是有效的,并且能够处理非常高数量密度的颗粒。该方法为众多应用中流体湍流中小颗粒的集体效应的全面研究铺平了道路。

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